CN105849653B - magnetic and/or electrostatic resonator - Google Patents

magnetic and/or electrostatic resonator Download PDF

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Publication number
CN105849653B
CN105849653B CN201480070592.2A CN201480070592A CN105849653B CN 105849653 B CN105849653 B CN 105849653B CN 201480070592 A CN201480070592 A CN 201480070592A CN 105849653 B CN105849653 B CN 105849653B
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China
Prior art keywords
moving parts
clock
watch
drive member
resonator
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CN201480070592.2A
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CN105849653A (en
Inventor
M·斯特兰策尔
多梅尼科 G·迪
P·温克勒
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Nivarox Far SA
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Nivarox Far SA
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Publication date
Priority claimed from CH02140/13A external-priority patent/CH709019B1/en
Priority claimed from EP13199427.9A external-priority patent/EP2887157B1/en
Priority claimed from CH01365/14A external-priority patent/CH709056A2/en
Priority claimed from CH01416/14A external-priority patent/CH710132A2/en
Priority claimed from EP14185638.5A external-priority patent/EP2998801A1/en
Priority claimed from EP14186652.5A external-priority patent/EP2891929B1/en
Application filed by Nivarox Far SA filed Critical Nivarox Far SA
Priority claimed from PCT/EP2014/076991 external-priority patent/WO2015096976A2/en
Publication of CN105849653A publication Critical patent/CN105849653A/en
Publication of CN105849653B publication Critical patent/CN105849653B/en
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    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B17/00Mechanisms for stabilising frequency
    • G04B17/32Component parts or constructional details, e.g. collet, stud, virole or piton
    • GPHYSICS
    • G04HOROLOGY
    • G04BMECHANICALLY-DRIVEN CLOCKS OR WATCHES; MECHANICAL PARTS OF CLOCKS OR WATCHES IN GENERAL; TIME PIECES USING THE POSITION OF THE SUN, MOON OR STARS
    • G04B15/00Escapements
    • G04B15/14Component parts or constructional details, e.g. construction of the lever or the escape wheel
    • GPHYSICS
    • G04HOROLOGY
    • G04CELECTROMECHANICAL CLOCKS OR WATCHES
    • G04C5/00Electric or magnetic means for converting oscillatory to rotary motion in time-pieces, i.e. electric or magnetic escapements
    • G04C5/005Magnetic or electromagnetic means

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Electromechanical Clocks (AREA)
  • Electric Clocks (AREA)

Abstract

A kind of clock and watch resonator,Including moving parts and drive member,The moving parts, which sets and is arranged to around axis ring-type, to be vibrated,The drive member is subjected to moment of torsion in watch and clock movement,It is characterized in that,Resonator is basic annular magnetic or electrostatic resonator,Wherein,Moving parts is periodically encouraged in the presence of being caused by the motion of drive member,Drive member is arranged to applies non-contact active force on the moving part,Moving parts is flexible and can be in the plane internal deformation perpendicular to axis,Moving parts vibrates in the plane,Moving parts includes the first area magnetically or electrically loaded with the first pitch angle,Drive member includes the second area magnetically or electrically loaded with second pitch angle different from the first pitch angle,Second area is arranged to first area to attract or be cooperated in a manner of repulsion,So that moving parts and drive member form deceleration or acceleration mechanism together.

Description

Magnetic and/or electrostatic resonator
Technical field
The present invention relates to a kind of clock and watch resonator, the clock and watch resonator includes setting around axis ring-type and being arranged to energy The moving parts that enough shakes and the drive member that moment of torsion is subjected in watch and clock movement.
The invention further relates to a kind of watch and clock movement, the watch and clock movement includes the energy storing device being fixed on machine plate, should Energy storing device, which is arranged to, to be sent to gear train by the moment of torsion and includes the mechanism of this toroidal cavity resonator to activate, wherein The moving parts is fixed to the machine plate by flexible strip, and the drive member is driven by the gear train, described Drive member controls the display device of the movement.
The invention further relates to the clock and watch for including a this movement.
The present invention relates to mechanical clock, the field of the particularly regulation of mechanical watch.
Background technology
Many contacts in adjustment means weaken quality factor and efficiency.And, it is difficult to coordinate the part of resonator Very different frequency.
The French Patent (FRP) FR 213216 of HORSTMANN MAGNETICS under one's name disclose a kind of magnetic for rotor and driven Dynamic and escapement, wherein what is occurred between mechanical oscillation component and rotor couples for pure magnetic and no machinery mutually Effect.Rotor includes dish, and the dish is made up of ferrimagnet and has the rule of even number on its whole periphery The spoke or arm of distribution, spoke or arm are shaped to the outer end of the circumferentially-adjacent arm of each pair or spoke relative to perpendicular to institute The symmetrical plane for stating the pivot center of rotor is offset in the axial direction.The mechanism includes:- oscillating member, such as rotor, its turn Orientation of oscillation of the shaft line parallel to the oscillating member;- and annular magnet component, it is loaded and extremely by oscillating member The periphery of rotor is partially surrounded, is connected to the magnetic pole of magnetic component so that proper oscillating member vibrates the rotor magnetic When, it is oriented in and is applied to turn around a large amount of positions on the periphery of the rotor with rotating the rotations driving torque of equidirectional On son.
The belgian patent BE 530509 of PHILIPS under one's name disclose a kind of device for being used to stablize spinner velocity, wherein Motor is charged by the mechanical resonance system run close to its resonant frequency at least in part.The system to be increased sharply in vibration The resistance torque of system applies stabilization in the velocity of rotation of the rotor.
The content of the invention
The present invention proposes to create a kind of mechanism than conventional resonator with higher efficiency.
Therefore, the present invention relates to a kind of clock and watch resonator, the clock and watch resonator includes:Moving parts, the moving parts enclose Setting and being arranged to around axis ring-type to vibrate;And drive member, the drive member are subjected to moment of torsion in watch and clock movement, its In, the resonator is basic annular magnetic or electrostatic resonator, wherein the moving parts is by the drive member Motion cause in the presence of periodically encouraged, the drive member be arranged on the moving parts apply it is non-contact Active force, the moving parts are at least deformable in the plane perpendicular to the axis and in the plane to be flexible Vibration, and the moving parts include with the first pitch angle magnetically or electrically loading (magnetization or with electrification, with Magnetic is powered) first area, the drive member include with the second pitch angle magnetic different from first pitch angle Ground or the second area electrically loaded, the second area are arranged to the first area to attract or in a manner of repulsion Cooperation, so that the moving parts and the drive member form deceleration or acceleration mechanism together, wherein, the driving structure The speed of part or the spread speed for being limited to the deformation wave in the material of the moving parts around the moving parts, and can limit Vibration standing wave between the repetition shape corresponding with standing wave mode of the fixed moving parts.
The invention further relates to a kind of watch and clock movement, the watch and clock movement includes the energy storing device being fixed on machine plate, should Energy storing device, which is arranged to, to be sent to gear train by the moment of torsion and includes the mechanism of this toroidal cavity resonator to activate, wherein The moving parts is fixed to the machine plate by flexible strip, and the drive member is driven by the gear train, described Drive member controls the display device of the movement.
The invention further relates to a kind of clock and watch, the clock and watch include this movement, wherein, the clock and watch are wrist-watch.
Brief description of the drawings
When reading detailed further below referring to the drawings, other features and advantages of the present invention will become apparent from, wherein:
Figures 1 and 2 show that according to the floor map of the toroidal cavity resonator of the present invention, the toroidal cavity resonator has ring-type Moving parts, the moving parts are encouraged by colyliform drive member, wherein figure 1 illustrate a position, wherein at 12 points and 6 points, The first pole shoe included in ring-type moving parts and the second pole shoe alignment included in drive member, and in 3 points and 9 points Place, the first pole shoe and the second pole shoe misalignment.Fig. 2 shows a position, wherein after the small angle rotation of drive member, this A little alignments are reversed.
Fig. 3 shows similar embodiment, and wherein pole shoe is made up of magnet, and wherein in Fig. 4, when these poles When boots are aligned, they repel each other, and in Figure 5, when these disengaging alignments, they are attracted one another.
Fig. 7 and Fig. 8 is shown between moving parts and drive member according to the angle (corresponding to Fig. 6) of drive member Interaction force curve map, in the figure 7 at 12 points, and be at 9 points in Fig. 8.
Fig. 9 to Figure 11 is similar to Fig. 6 to Fig. 8, and some of pole shoes remove from moving parts, and remaining pole shoe group is periodically It is positioned on periphery.
Figure 12 to Figure 14 is also similar with Fig. 6 to Fig. 8, and only remains four pair of first pole shoe, each pair on the moving part It is spaced 90 °.
Figure 15 and Figure 16 shows the first modification of the present invention, and it is the movement for encouraging the local ring form according to Figure 12 Part.
Figure 16 shows particular resonance mode.Figure 15 A are the modification of Figure 15 embodiment, including take mechanical stopping piece Form synchronously loses limits device.
Figure 17 and Figure 18 shows the second modification, and it is the moving parts for encouraging unbroken loop form.Figure 18 shows spy Determine resonance mode.
The 3rd modification shown in Figure 19 is configured to stack drive member and moving parts, so as in fig. 20 in three dimensions Vibrated on degree.
Figure 21 is the block diagram for showing clock and watch, and the clock and watch include the movement for being combined with the mechanism according to the present invention.
Embodiment
Hereinafter, " ring " refers to the sky for being similar to open anchor ring (anchor ring) that Self-Closing is extended into around axis Between.It is somebody's turn to do " ring " and is essentially the rotary surface for surrounding the axis, but needs not be accurate (complete) rotary surface around the axis.
The present invention can be implemented by using magnetic field and electrostatic field.It more specifically shows in magnetic modification.
The present invention relates to a kind of clock and watch resonator 6, the clock and watch resonator 6, which includes being arranged to, can surround axis A vibrations Moving parts 7 and the drive member 8 of moment of torsion is subjected in watch and clock movement 10.
According to the present invention, the resonator is the magnetic or electrostatic resonator 6 of basic annular, and its moving parts 7 is by driving The motion of component 8 is periodically encouraged in the presence of causing, and the drive member 8, which is arranged on moving parts 7, to be applied Non-contact active force.
Moving parts group 7 is flexible and is at least deformable, and move portion in the plane perpendicular to axis A Part 7 includes the first area that magnetically or is electrically loaded with the first pitch angle, drive member 8 include with the first segment away from The second area that the second different pitch angle of angle magnetically or electrically loads, the second area are arranged to and firstth area Domain is cooperated in a manner of attracting or repelling, so that moving parts 7 and drive member 8 form deceleration or acceleration mechanism together.
The interaction can occur between element and conduction or dielectric the track magnetically or electrically loaded.
More specifically, in by non-limiting embodiment shown in the drawings, moving parts 7 is included with the first pitch angle The first quantity magnetically or electrically loaded the first pole shoe 76, drive member 8 include with different from the first pitch angle Second pole shoe 86 of the second quantity magnetically or electrically loaded of the second pitch angle.These second pole shoes 86 be arranged to First pole shoe 76 is cooperated in a manner of attracting or repelling, so that moving parts 7 and drive member 8 form deceleration or added together Fast mechanism.
More specifically, first quantity is different from the second quantity.
More specifically, first quantity differs a unit (unit é) with the second quantity.
Especially, the speed of drive member 8 defines the change around the moving parts 7 in the material of moving parts 7 The spread speed of shape ripple.
In yet another embodiment of the present invention, drive member 8 speed limit moving parts 7 with standing wave mode pair Vibration standing wave between the repetition shape answered.
Preferably, the motion of drive member 8 includes at least one pivoting action.
More specifically, and such as accompanying drawing is shown in a non-limiting manner, and the motion of drive member 8 is around axis A's Move pivotally.
In certain embodiments, as shown in Figure 15 and 17, moving parts 7 is fixed to bag by multiple flexible strips 9 The machine plate 5 being contained in watch and clock movement 10.
In the first modification, these flexible strips 9 are more more flexible than moving parts 7, are arranged to and protect moving parts 7 The center of holding into substantially on the axis a and limit moving parts 7 in the same plane P perpendicular to the axis A vibration fortune Dynamic, the restricted displacement in the center of inertia of moving parts 7 is less than minimum external dimensions of the moving parts 7 in plane P very One of.
In the second modification, these flexible strips 9 are firmer than moving parts 7, are arranged to and are kept into moving parts 7 Center on the axis a and limits oscillating movement of the moving parts 7 in the same plane P perpendicular to the axis A substantially, moves The restricted displacement in the center of inertia of dynamic component 7 is less than 1/10th of minimum external dimensions of the moving parts 7 in plane P.
More specifically, moving parts 7 aggravates in a manner of continuously or periodically on the periphery thereof.
Especially, moving parts 7 is aggravated by multiple inertial mass.
Especially, moving parts 7 has the variable cross section and/or thickness around its periphery.
Advantageously, moving parts 7 by can micro Process material or silicon be made, and in each plane through the axis A Inside all there is square-section.
Advantageously, multiple flexible strips 9 of moving parts 7 and the machine plate 5 for being connected to included in watch and clock movement 10 Integrally.
Advantageously, moving parts 7 and multiple flexible strips 9 and machine plate 5 are integral.
In a particular implementation, under unstressed free state, moving parts 7 is being orthogonal to axis A plane P It is interior that there is polygon or multi-leaf-shaped shape.
In Fig. 1 into the particular implementation shown in Figure 19, moving parts 7 is the ring coaxial with drive member 8.
In a particular implementation, as seen in fig. 20, moving parts 7 is can be in axis A direction up to The entity (solid) of small part deformation.
The invention further relates to a kind of watch and clock movement 10, the watch and clock movement 10 includes being fixed on machine plate 5:Energy stores fill Put 3, be usually going barrel, the energy storing device 3 be arranged to by moment of torsion be sent to gear train 2 with activate include this ring The mechanism 1 of shape resonator 6, the wherein moving parts 7 are fixed to the machine plate 5 by flexible strip 9;With drive member 8, typically Ground is escape wheel, and the drive member 8 is driven by gear train 2, and drive member 8 preferably controls 10 display devices 4 of movement.
The invention further relates to the clock and watch 100 for including this movement 10.Preferably, the clock and watch 100 are wrist-watches.
More specifically, those figures show favourable embodiment variant.
Moving parts 7 includes the first pole shoe 76, and drive member 8 includes the second pole shoe 86.Pole shoe in each structure Quantity is selected such that the given angle for drive member 8, and moving parts 7 and drive member 8 are located at 12 points and 6 points The pole shoe at place is facing with each other, and the pole shoe at 3 o'clock and 9 o'clock does not face each other.Small angle theta is rotated in drive member 8 In the case of, these alignments are reversed.
In Fig. 1, at 12 points and 6 points, the first pole shoe 76 and the second pole shoe 86 are aligned.At 3 points and 9 points, the first pole The misalignment of 76 and second pole shoe of boots 86.In fig. 2, in the case where drive member 8 rotates small angle theta, these alignments are inverse Turn.
In figure 3, pole shoe is made up of magnet.Drive member 8 is radially outward polarized, and moving parts 7 is by radially court Polarized to axis A.In Fig. 4, when these pole shoes are aligned, they repel each other.In Figure 5, it is aligned when these pole shoes depart from When, they are attracted one another.
It can thus be drawn according to the angle (corresponding to Fig. 6) of drive member 8 between moving parts 7 and drive member 8 Interaction is tried hard to, and in the figure 7 at 12 points, and is at 9 points in fig. 8.
Shown similar to Fig. 6 to Fig. 8 Fig. 9 to Figure 11 by the way that pole shoe is removed from moving parts 7, ideal can be selected Ground positions the position of the interaction force between two elements.Figure 12 to Figure 14 on moving parts 7 by only retaining four pair One pole shoe 76 and it is further, the first pole shoe of this four couple 76 is spaced 90 °.
Figure 15 and Figure 16 shows the first modification of the present invention, and first modification is to swash using principle described above The moving parts 7 that form is part ring is encouraged, so that it is with so-called wineglass modal resonance:Drive member 8 and moving parts 7 Vibration is synchronous.Do not interacted mechanically between drive member 8 and moving parts 7.
Figure 15 is the diagram of the mechanism, wherein only swashing at 12 points, 3 points, 6 points and 9 points to ring-type moving parts 7 Encourage.Figure 16 shows resonance mode of the moving parts 7 in variable eccentric elliptic in the case where axis is exchanged.
Figure 15 A are Figure 15 embodiment variants, and the embodiment includes taking synchronously losing for mechanical stopping piece form Limits device.In the second aspect of the aspect of the pole shoe 86 parallel to drive member 8, gear 40 is integral with drive member 8, And moving parts 7 includes the retainer for taking the form of pin 41.In normal operating, these pins 41 and the starting of oscillation of moving parts 7 one Swing, do not contact gear 40.In the case where losing synchronization, drive member disk 8 tends to dally (overspeed) and too fast rotation Turn, but pin 41 thus and gear clash, this can prevent from dallying.
Figure 17 and Figure 18 shows the second modification, and second modification is that the use of moving parts 7 to unbroken loop form is upper Principle is stated, for the excitation of so-called Ho La hoop mode.Figure 17 is the diagram of the mechanism, and wherein ring-type moving parts 7 is at it Whole circumference is activated.Figure 18 shows its particular resonance mode.
The 3rd modification shown in Figure 19 is to stack drive member 8 and moving parts 7, to make moving parts 7 Vibrated at least in part along axis A direction with three-dimensional in height according to the first modification identical principle.The disk thus be Potato chips shape, as seen in fig. 20.
4th modification (not shown) is outer (going out plane) form of plane of the second modification of very close 3rd modification.
Another modification being not shown includes drive member 8, and the drive member includes track, rather than magnet one by one, Track identical mode in a manner of coordinating with magnet-magnet interacts with the magnet on the moving parts 7 of vibration.
The invention enables the contact that can be eliminated in adjustment means, as a result can improve quality factor and increase efficiency.And And the drive member 8 preferably formed by escape wheel is with low frequency rotating, and preferably the moving parts 7 of ring is with high-frequency resonant.
Causing can for Figure 15 embodiment-wherein moving parts is as the endless domain for being reduced to certain angle scope- To be vibrated with wineglass mode.

Claims (21)

1. a kind of clock and watch resonator (6), the clock and watch resonator (6) includes moving parts (7) and drive member (8), the move portion Part (7) is set and is arranged to and can vibrate around axis (A) ring-type, and the drive member (8) is subjected in watch and clock movement (10) Moment of torsion, it is characterised in that the resonator is the magnetic or electrostatic resonator (6) of basic annular, wherein, the moving parts (7) periodically encouraged in the presence of being caused by the motion of the drive member (8), the drive member (8) is arranged Into applying non-contact active force on the moving parts (7), the moving parts (7) for flexibility and can be perpendicular to institute State in axis (A) plane (P) and deform, the moving parts vibrates in the plane, and the moving parts (7) is included with first The first area that pitch angle magnetically or electrically loads, the drive member (8) are included with different from first pitch angle The second area that magnetically or electrically loads of the second pitch angle, the second area be arranged to the first area with Attract or cooperated in a manner of repelling, so that the moving parts (7) and the drive member (8) form deceleration or accelerated together Mechanism, wherein, the speed of the drive member is limited to the deformation in the material of the moving parts around the moving parts The spread speed of ripple, and the vibration standing wave between the repetition shape corresponding with standing wave mode of the moving parts can be limited.
2. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) is included with first segment The first pole shoe (76) for the first quantity that elongation magnetically or electrically loads;And the drive member (8) include with institute State the second pole shoe (86) for the second quantity that the second different pitch angle of the first pitch angle magnetically or electrically loads, described Diode boot (86) is arranged to first pole shoe (76) to attract or be cooperated in a manner of repelling, so that the moving parts (7) and the drive member (8) forms deceleration or acceleration mechanism together.
3. clock and watch resonator (6) according to claim 2, it is characterised in that first quantity and second quantity It is different.
4. clock and watch resonator (6) according to claim 3, it is characterised in that first quantity and second quantity Differ a unit.
5. clock and watch resonator (6) according to claim 1, it is characterised in that the motion of the drive member (8) is included extremely A few pivoting action.
6. clock and watch resonator (6) according to claim 5, it is characterised in that the motion of the drive member (8) is Around the axis (A) pivoting action.
7. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) passes through multiple flexibilities Band (9) is fixed to the machine plate (5) in the watch and clock movement (10), and these flexible strips (9) are than the moving parts (7) it is more flexible, be arranged to the moving parts (7) be kept into center substantially on the axis (A) and limited The moving parts (7) in the motion in the axis (A) same plane (P), wherein, the moving parts (7) The center of inertia limited displacement be less than minimum external dimensions of the moving parts (7) in the plane (P) ten/ One.
8. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) passes through multiple flexibilities Band (9) is fixed to the machine plate (5) in the watch and clock movement (10), and these flexible strips (9) are than the moving parts (7) it is firmer, be arranged to the moving parts (7) be kept into center substantially on the axis (A) and described in limiting Moving parts (7) in the motion in the axis (A) same plane (P), wherein, the moving parts (7) it is used Property center limited displacement be less than minimum external dimensions of the moving parts (7) in the plane (P) 1/10th.
9. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) is with the continuous or cycle Property mode is aggravated on the periphery thereof.
10. clock and watch resonator (6) according to claim 9, it is characterised in that the moving parts (7) passes through multiple used Property block and aggravated.
11. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) is along its periphery With variable cross section and/or thickness.
12. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) is by can micro Process Material be made, and there is square-section in each plane through the axis (A).
13. clock and watch resonator (6) according to claim 12, it is characterised in that the moving parts (7) and multiple flexibilities Band (9) is integrally formed, to be connected on the machine plate (5) being included in the watch and clock movement (10).
14. clock and watch resonator (6) according to claim 13, it is characterised in that the moving parts (7) with it is the multiple Flexible strip (9) and the machine plate (5) form one.
15. clock and watch resonator (6) according to claim 1, it is characterised in that under unconstrained free state, institute State moving parts (7) has polygon or multi-leaf-shaped shape in the plane (P) for being orthogonal to the axis (A).
16. clock and watch resonator (6) according to claim 2, it is characterised in that the drive member (8) include be in Gear (40) in the second parallel aspect of the aspect of second pole shoe (86), the gear (40) and the drive member (8) Integrally;And the retainer of the form of the moving parts (7) including pin (41), these pins (41) in normal operating with The moving parts (7) is vibrated without contacting the gear (40) together, and the tooth is hooked in the case where losing synchronization (40) are taken turns to prevent any idle running.
17. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) be and the drive The coaxial ring of dynamic component (8).
18. clock and watch resonator (6) according to claim 1, it is characterised in that the drive member (8) is escape wheel.
19. clock and watch resonator (6) according to claim 1, it is characterised in that the moving parts (7) is made up of silicon, and And there is square-section in each plane through the axis (A).
20. a kind of watch and clock movement (10), the watch and clock movement (10) includes the energy storing device (3) being fixed on machine plate (5), should Energy storing device (3) be arranged to by the moment of torsion be sent to gear train (2) with activate include annular according to claim 1 The mechanism (1) of resonator (6), wherein, the moving parts (7) is fixed to the machine plate (5) by flexible strip (9), described Drive member (8) is driven by the gear train (2), and the drive member (8) controls the display device of the watch and clock movement (10) (4)。
21. a kind of clock and watch (100), the clock and watch (100) include watch and clock movement according to claim 20 (10), and its feature exists In the clock and watch are wrist-watch.
CN201480070592.2A 2013-12-23 2014-12-09 magnetic and/or electrostatic resonator Active CN105849653B (en)

Applications Claiming Priority (23)

Application Number Priority Date Filing Date Title
EP13199427.9 2013-12-23
EP13199428.7 2013-12-23
CH02140/13 2013-12-23
EP13199427.9A EP2887157B1 (en) 2013-12-23 2013-12-23 Optimised escapement
EP13199428 2013-12-23
CH21412013 2013-12-23
CH02141/13 2013-12-23
CH02140/13A CH709019B1 (en) 2013-12-23 2013-12-23 Magnetic or electrostatic exhaust mechanism.
CH10572014 2014-07-11
EP14176816 2014-07-11
EP14176816.8 2014-07-11
CH01057/14 2014-07-11
CH01365/14 2014-09-09
CH01365/14A CH709056A2 (en) 2013-12-23 2014-09-09 Mechanism of clock synchronization.
EP14184158.5 2014-09-09
EP14184158.5A EP2889701B1 (en) 2013-12-23 2014-09-09 Clock synchronisation mechanism
EP14185638.5A EP2998801A1 (en) 2014-09-19 2014-09-19 Magnetic clock escapement and device for controlling the operation of a clock movement
EP14185638.5 2014-09-19
CH01416/14 2014-09-19
CH01416/14A CH710132A2 (en) 2014-09-19 2014-09-19 Watchmaker magnetic escapement and device regulating the movement of a watch movement.
EP14186652.5 2014-09-26
EP14186652.5A EP2891929B1 (en) 2013-12-23 2014-09-26 Magnetic or electrostatic resonator
PCT/EP2014/076991 WO2015096976A2 (en) 2013-12-23 2014-12-09 Magnetic or electrostatic resonator

Publications (2)

Publication Number Publication Date
CN105849653A CN105849653A (en) 2016-08-10
CN105849653B true CN105849653B (en) 2017-11-24

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US (1) US9651920B2 (en)
JP (1) JP6166847B2 (en)
CN (1) CN105849653B (en)

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JP2017500575A (en) 2017-01-05

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